3. Find the resultant magnetic flux density at the origin of the coordinate system due to four wire segments carrying currents I = Ig. I2 = 2lo. I3 = 3l, and I, = 41g. The locations of the segments 1, 2. 3 and 4 are defined by the following relations: 1:r = 2a, << n, z = 0 (current is in increasing o direction), 2: r = 4a,

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3. Find the resultant magnetic flux density at the origin of the coordinate system due to
four wire segments carrying currents = lg, I2 2lg, I3 3lo and I4 = 410. The
locations of the segments 1, 2, 3 and 4 are defined by the following relations:
1: r = 2a, < 4 <n, z = 0 (current is in increasing o direction),
2: r = 4a, <o < IT, z = 0 (current is in increasing o direction).
3: r = 3a, <o <, z = 0 (current is in decreasing o direction)
4: 2a <r< 7a, = 0, z = 0 (current is in increasing r direction).
Transcribed Image Text:3. Find the resultant magnetic flux density at the origin of the coordinate system due to four wire segments carrying currents = lg, I2 2lg, I3 3lo and I4 = 410. The locations of the segments 1, 2, 3 and 4 are defined by the following relations: 1: r = 2a, < 4 <n, z = 0 (current is in increasing o direction), 2: r = 4a, <o < IT, z = 0 (current is in increasing o direction). 3: r = 3a, <o <, z = 0 (current is in decreasing o direction) 4: 2a <r< 7a, = 0, z = 0 (current is in increasing r direction).
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